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Morales, Juan C.; Arango, Carlos A. – International Journal of Mathematical Education in Science and Technology, 2023
An alternative method for obtaining analytical solutions of the time-independent Schrödinger equation (TISE) is developed and applied to 1-dimensional model quantum systems of interest in atomic and molecular physics. The method is based on proposing a wave function that is a product of two functions, one of them an integrating factor. The…
Descriptors: Physics, Calculus, Mathematical Applications, Methods
Wes Maciejewski – International Journal of Mathematical Education in Science and Technology, 2025
Calculus is perhaps the most widely taught and researched upper-secondary/post-secondary mathematics subject the world over. The research literature is amassing greater clarity around students' understandings of calculus, yet calculus instruction tends to be at odds with this literature, maintaining a focus on procedural aspects of the subject.…
Descriptors: Calculus, Mathematics Instruction, College Students, College Mathematics
Yue Zhao – ProQuest LLC, 2024
Multivariate Functional Principal Component Analysis (MFPCA) is a valuable tool for exploring relationships and identifying shared patterns of variation in multivariate functional data. However, interpreting these functional principal components (PCs) can sometimes be challenging due to issues such as roughness and sparsity. In this dissertation,…
Descriptors: Factor Analysis, Functional Literacy, Data Use, Mathematical Applications
Fernando J. Ballesteros; Bartolo Luque; Herminia Filgaira – Discover Education, 2024
The subjective number-space mapping and, especially, its evolution in young children has been the subject of intense controversy among different competing models. Many studies point out that: (i) young children's innate estimates follow a logarithmic mapping (Weber-Fechner law) and (ii) driven by education, children evolve into a linear mapping.…
Descriptors: Concept Mapping, Numbers, Young Children, Child Development
Luis E. Hernández-Zavala; Claudia Acuña-Soto; Vicente Liern – International Electronic Journal of Mathematics Education, 2025
Students often instrumentally use variables and unknowns without considering the variational thinking behind them. Using parameters to modify the coefficients or unknowns in equations or systems of linear equations (without altering their structure) involves consciously incorporating variational thinking into problem-solving. We will test the…
Descriptors: Equations (Mathematics), Mathematical Applications, Undergraduate Students, Problem Solving
Alexey L. Voskov – International Journal of Mathematical Education in Science and Technology, 2024
QR decomposition is widely used for solving the least squares problem. However, existing materials about it may be too abstract for non-mathematicians, especially STEM students, and/or require serious background in linear algebra. The paper describes theoretical background and examples of GNU Octave compatible MATLAB scripts that give relatively…
Descriptors: Mathematics, Algorithms, Data Science, Mathematical Concepts
Vahid Borji; Rafael Martínez-Planell; María Trigueros – Educational Studies in Mathematics, 2024
We use Action-Process-Object-Schema (APOS) theory to study students' geometric understanding of partial derivatives of functions of two variables. This study contributes to research on the teaching and learning of differential multivariable calculus and its didactics. This is an important area due to its multiple applications in science,…
Descriptors: Geometry, Geometric Concepts, Calculus, Mathematical Applications
Nurma Angkotasan; Hery Suharna; In Hi. Abdullah; Suryani Dahlan – International Education Studies, 2024
The identification in this study with the aim is to describe how difficult it is for students to think reflectively when solving math problems, especially in linear programming material. Based on the purpose of this study, the type of research is qualitative with a descriptive exploratory approach. Data collection techniques used are: (1) test…
Descriptors: Reflection, Thinking Skills, Problem Solving, Mathematics Education
William R. Dardick; Jeffrey R. Harring – Journal of Educational and Behavioral Statistics, 2025
Simulation studies are the basic tools of quantitative methodologists used to obtain empirical solutions to statistical problems that may be impossible to derive through direct mathematical computations. The successful execution of many simulation studies relies on the accurate generation of correlated multivariate data that adhere to a particular…
Descriptors: Statistics, Statistics Education, Problem Solving, Multivariate Analysis
Maria Hedefalk; Lovisa Sumpter – For the Learning of Mathematics, 2025
We live in an increasingly worrying future, where researchers are looking at how we can create education for a sustainable world. In this study we investigate what such education could look like, especially for young students, reinforcing hope and an ability to act and come up with ideas of sustainable solutions with no obvious 'good' solution.…
Descriptors: Early Childhood Education, Young Children, Ethics, Sustainability
Lee Kennedy-Shaffer – Journal of Statistics and Data Science Education, 2024
In recent years, the discipline of statistics has begun reckoning with its difficult history. Institutions are reconsidering names that have honored key historical figures in statistics who have deep ties to eugenics movements and racial and class prejudice. These names, however, continue to appear in our classrooms, where we teach the methods…
Descriptors: Statistics, Statistics Education, Mathematics Instruction, History
Inyoung Lee – ProQuest LLC, 2024
Linear algebra is gaining increased attention due to its applications in many modern high-tech industries, such as artificial intelligence, machine learning, and robotics. Coordinate systems underlie many concepts in linear algebra and promote students' spatial thinking of key concepts by imposing a visual aspect to courses that may otherwise be…
Descriptors: Mathematical Applications, Algebra, College Mathematics, STEM Education
Avery H. Closser; Anthony F. Botelho; Jenny Yun-Chen Chan – Journal of Educational Data Mining, 2024
Experimental research on perception and cognition has shown that inherent and manipulated visual features of mathematics problems impact individuals' problem-solving behavior and performance. In a recent study, we manipulated the spacing between symbols in arithmetic expressions to examine its effect on 174 undergraduate students' arithmetic…
Descriptors: Undergraduate Students, Arithmetic, Symbols (Mathematics), Equations (Mathematics)
Jiang, Yongfeng; Li, Yuan – International Journal of Information and Communication Technology Education, 2022
This paper has designed a professional and practical SIMD computer mathematical model based on the SIMD physical machine model combined with the variable addition method. Furthermore, the model is applied in image collection, processing, and display operations, and a SIMD data parallel image processing system is finally established by absorbing…
Descriptors: Algorithms, Artificial Intelligence, Computers, Mathematical Models
Richard F. Melka; Hashim A. Yousif – International Journal of Mathematical Education in Science and Technology, 2023
In application-oriented mathematics, particularly in the context of nonlinear system analysis, phase plane analysis through SageMath offers a visual display of the qualitative behaviour of solutions to differential equations without inundating students with cumbersome calculations of the plane-phase. A variety of examples is usually given to…
Descriptors: Mathematical Concepts, Mathematical Applications, Problem Solving, Computation